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初级视皮层中的非经典感受野现象与短程连接

Extraclassical receptive field phenomena and short-range connectivity in V1.

作者信息

Wielaard Jim, Sajda Paul

机构信息

Laboratory for Intelligent Imaging and Neural Computing, Department of Biomedical Engineering, Columbia University, New York, NY 10027, USA.

出版信息

Cereb Cortex. 2006 Nov;16(11):1531-45. doi: 10.1093/cercor/bhj090. Epub 2005 Dec 22.

Abstract

Extraclassical receptive field phenomena in V1 are commonly attributed to long-range lateral connections and/or extrastriate feedback. We address 2 such phenomena: surround suppression and receptive field expansion at low contrast. We present rigorous computational support for the hypothesis that the phenomena largely result from local short-range (< 0.5 mm) cortical connections and lateral geniculate nucleus input. The neural mechanisms of surround suppression in our simulations operate via (A) enhancement of inhibition, (B) reduction of excitation, or (C) action of both simultaneously. Mechanisms (B) and (C) are substantially more prevalent than (A). We observe, on average, a growth in the spatial summation extent of excitatory and inhibitory synaptic inputs for low-contrast stimuli. However, we find this is neither sufficient nor necessary to explain receptive field expansion at low contrast, which usually involves additional changes in the relative gain of these inputs.

摘要

V1区的超经典感受野现象通常归因于长程侧向连接和/或纹外反馈。我们研究了其中两种现象:低对比度下的周边抑制和感受野扩展。我们为以下假设提供了严格的计算支持:这些现象主要源于局部短程(<0.5毫米)皮质连接和外侧膝状体输入。我们模拟中周边抑制的神经机制通过以下方式运行:(A)增强抑制,(B)减少兴奋,或(C)两者同时作用。机制(B)和(C)比(A)更为普遍。我们观察到,对于低对比度刺激,兴奋性和抑制性突触输入的空间总和范围平均有所增加。然而,我们发现这既不足以也不必要来解释低对比度下的感受野扩展,感受野扩展通常还涉及这些输入相对增益的额外变化。

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